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Interaction of shock electromagnetic waves with transparent materials: classical a

机译:透明材料冲击电磁波的相互作用:古典a

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There is discussed a theoretical model of initiating of laser-induced damage and ablation of transparent materials by femtosecond pluses based on properties of shock electromagnetic wave (SHEW). Advantages of this model are increased efficiency of SHEW-induced ionization and possibility of effective straight action of SHEW front on ions at crystal-lattice points. It is presented simplified description of SHEW-induced processes within approach of classical mechanics and electrodynamics: atoms are described as dipoles with certain ionization energy interacting with SHEW in potential well formed by crystal lattice. There are considered possibilities of laser-induced ionization by higher harmonics appearing during SHEW formation and point- defect formation and delocalization of ions at crystal points by SHEW. Obtained results and predictions are compared with experimental data and shown to be capable of explaining many observed regulations of femtosecond laser interactions with transparent media.
机译:基于冲击电磁波(Shew)的性质,讨论了激光诱导的激光诱导损伤和透明材料消融的理论模型。该模型的优点是提高了削减电离的效率,以及在晶格点处的离子对离子的乳膏前部的有效直接作用的可能性。呈现了在经典力学和电动电动和电动的方法内的削减过程的简化描述:原子被描述为具有通过晶格形成的潜在孔的潜在良好的μ的电离能量的偶极子。通过施工点的遮光形成和晶体点处的离子形成和离子的缺点形成和离子化的较高谐波,认为激光诱导的电离的可能性。将获得的结果和预测与实验数据进行比较,并证明能够解释与透明介质的飞秒激光相互作用的许多观察法规。

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